Structural and Electronic Phase Transitions in Mixed Transition Metal Perovskite Oxides

Structural and Electronic Phase Transitions in Mixed Transition Metal Perovskite Oxides PDF Author: Ilyas Qasim
Publisher:
ISBN:
Category : Oxides
Languages : en
Pages :

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Structural and Electronic Phase Transitions in Mixed Transition Metal Perovskite Oxides

Structural and Electronic Phase Transitions in Mixed Transition Metal Perovskite Oxides PDF Author: Ilyas Qasim
Publisher:
ISBN:
Category : Oxides
Languages : en
Pages :

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Localized to Itinerant Electronic Transition in Perovskite Oxides

Localized to Itinerant Electronic Transition in Perovskite Oxides PDF Author: John B. Goodenough
Publisher: Springer
ISBN: 3540455035
Category : Science
Languages : en
Pages : 249

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Book Description
Interest in the transition metal oxides with perovskite related structures goes back to the 1950s when the sodium tungsten bronzes NaxWO3 were shown to be metallic [1], the system Lal_xSr~MnO3 was found to contain a ferromagnetic conductive phase [2], and La0.sSr0.sCoO3 was reported to be a ferromagnetic metal, but with a peculiar magnetization of 1.5 #a/Co atom [3]. Stoichiometric oxide perovskites have the generic formula AMO3 in which the A site is at the center of a simple cubic array of M sites; the oxide ions form (180 ° 4)) M O M bridges to give an MO3 array of corner shared MO6/2 octahedra and the larger A cations have twelvefold oxygen coordination. Mismatch between the A O and M O equilibrium bond lengths introduces internal stresses. A compressive stress on the MO3 array is accommodated by a lowering of the M O M bond angle from 180 ° to (180 ° 4)); a tensile stress on the M O M bonds is accommodated by the formation of hexagonal polytypes [4].

Pressure-induced Electronic Phase Transitions in Transition Metal Oxides and Rare Earth Metals

Pressure-induced Electronic Phase Transitions in Transition Metal Oxides and Rare Earth Metals PDF Author: Brian Ross Maddox
Publisher:
ISBN:
Category :
Languages : en
Pages : 372

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Electronic Phase Transitions in Transition-metal Oxides

Electronic Phase Transitions in Transition-metal Oxides PDF Author: Gerard Joseph HYLAND
Publisher:
ISBN:
Category :
Languages : en
Pages : 0

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Properties of Perovskites and Other Oxides

Properties of Perovskites and Other Oxides PDF Author: Karl A. Mller
Publisher: World Scientific
ISBN: 9814317691
Category : Science
Languages : en
Pages : 583

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Book Description
In this book some 50 papers published by K A Mšller as author or co-author over several decades, amplified by more recent work mainly by T W Kool with collaborators, are reproduced. The main subject is Electron Paramagnetic Resonance (EPR) applied to the study of perovskites and other oxides with related subjects. This wealth of papers is organized into eleven chapters, each with an introductory text written in the light of current understanding. The contributions of the first editor on structural phase transitions have been immense, and because K A Mšller and J C Fayet have published a review paper on the subject, the latter is reproduced in chapter VII. Not related to EPR is a part of chapter VIII on the dipolar and quantum paraelectric behavior with dielectric studies. in chapter X two papers proving the existence of Fermi glasses are reproduced. The year 1986 bears some significance: early in this year the paper by Bednorz and Mšller on the possible observation of superconductivity was published. This resulted in a substantial shift in the paradigm of condensed matter physics, to which the present first editor has contributed scientifically with others and which will be reviewed in a second volume.

Perovskites and Related Mixed Oxides

Perovskites and Related Mixed Oxides PDF Author: Pascal Granger
Publisher: John Wiley & Sons
ISBN: 3527337636
Category : Technology & Engineering
Languages : en
Pages : 1050

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Book Description
This comprehensive handbook and ready reference details all the main achievements in the field of perovskite-based and related mixed-oxide materials. The authors discuss, in an unbiased manner, the potentials as well as the challenges related to their use, thus offering new perspectives for research and development on both an academic and industrial level. The first volume begins by summarizing the different synthesis routes from molten salts at high temperatures to colloidal crystal template methods, before going on to focus on the physical properties of the resulting materials and their related applications in the fields of electronics, energy harvesting, and storage as well as electromechanics and superconductivity. The second volume is dedicated to the catalytic applications of perovskites and related mixed oxides, including, but not limited to total oxidation of hydrocarbons, dry reforming of methane and denitrogenation. The concluding section deals with the development of chemical reactors and novel perovskite-based applications, such as fuel cells and high-performance ceramic membranes. Throughout, the contributions clearly point out the intimate links between structure, properties and applications of these materials, making this an invaluable tool for materials scientists and for catalytic and physical chemists.

Electronic Structure and Phase Separation of Transition Metal Oxides

Electronic Structure and Phase Separation of Transition Metal Oxides PDF Author: Zhihai Zhu
Publisher:
ISBN:
Category :
Languages : en
Pages : 236

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Transition Metal Oxides

Transition Metal Oxides PDF Author: Chintamani Nagesa Ramachandra Rao
Publisher: VCH Publishers
ISBN:
Category : Science
Languages : en
Pages : 360

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Structure, Properties and Preparation of Perovskite-Type Compounds

Structure, Properties and Preparation of Perovskite-Type Compounds PDF Author: Francis S. Galasso
Publisher: Elsevier
ISBN: 1483146022
Category : Science
Languages : en
Pages : 228

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Book Description
Structure, Properties and Preparation of Perovskite-Type Compounds, Volume 5 presents the various methods of preparing powders, single crystals, and thin films of perovskite-type compounds. This book discusses the structure of perovskite-type compounds and their properties. Organized into 11 chapters, this volume begins with an overview of the structure, properties, and preparation of perovskite-type compounds. This text then examines how X-ray diffraction can be used to determine unit cell data and to orient single crystals. Other chapters consider the effect of nuclear radiation on the properties of ferroelectric materials. This book discusses as well the phase transitions in perovskite-type compounds, which are often associated with a change in ferroelectric properties. The final chapter explores the two techniques in the preparation of the ternary carbides with the perovskite structure, which involves melting the appropriate proportions of the two metals and carbon under argon. This book is a valuable resource for solid-state chemists.

Mixed Ionic Electronic Conducting Perovskites for Advanced Energy Systems

Mixed Ionic Electronic Conducting Perovskites for Advanced Energy Systems PDF Author: Nina Orlovskaya
Publisher: Springer Science & Business Media
ISBN: 9781402019432
Category : Technology & Engineering
Languages : en
Pages : 342

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Book Description
Advanced mixed ionic electronic conducting (MIEC) perovskites play an important role in many electrochemical systems for advanced energy technologies. They are major components in such devices as solid oxide fuel cells (SOFCs), oxygen separation membranes, chemical sensors and catalysts. In addition to energy technology, the development of these multifunctional materials is of crucial importance for transportation, aerospace engineering, and electronics. The use of these materials as chemical sensors is also important for anti-terrorism initiatives. The present book discusses progress and problems in the development of ionic, electronic, and MIEC materials as active materials in advanced energy systems; the development and design of solid-oxide fuel cells (SOFCs) for next-generation vehicles, chemical sensors and oxygen separation membranes; and identifies directions for future research, such as conducting mechanisms, stability and reliability of devices, degradation problems, crystal structure, classification of phase transitions exhibited by the materials.